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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 15 days ago
The postdoctoral researcher will focus on the design, fabrication oversight, and characterization of high-performance integrated quantum sources. The research plan includes: Resonant and Non-Resonant Design
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Carnegie Mellon University is a private, global research university that stands among the world’s most renowned education institutions. With ground-breaking brain science, path-breaking performances
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of high Reynolds numbers flows in classical computing platforms, such an approach may also pave the way towards the simulation of turbulent flows in quantum computers. The project will be carried out within
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centered on various aspects of nanophysics, ranging from materials science to bio- and quantum physics to various applications. The division is a central part of NanoLund, Lund University's large
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spectrum availability, potential bandwidth and security resulting from the use Radio Frequencies for communications. Free Space Optical Communications offer an exciting technology which can provide a high
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professionals to accelerate scientific discovery and engineering advances across a broad range of disciplines. As an important part of the broader High-Performance Computing (HPC) infrastructure, the division
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solid state physics - superconductivity/ quantum devices - clean room micro-nano fabrication - optical setups in a weak photon flux regime - low temperature and/or high frequency transport measurements
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Familiarity with performance modeling, analysis and optimization for heterogeneous architectures. Experience with developing code for: molecular dynamics, computational fluid dynamics, or quantum chemistry
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Qualifications at this Level Education/Training: PhD (theoretical nuclear/high-energy physics, quantum information science, lattice gauge theories, quantum many-body dynamics) Experience: Preferred--computational
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-Based Science and Technology and Advanced Research) project. This position is funded by the NSF EPSCoR RII E-RISE program and focuses on the end-to-end development of high-purity germanium (HPGe